蜻蜓 eVTOL 飞机的设计与飞行模拟验证

Drones Pub Date : 2024-07-09 DOI:10.3390/drones8070311
Wen Zhao, Yingqi Wang, Liqiao Li, Fenghua Huang, Hanwen Zhan, Yiqi Fu, Yunfei Song
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摘要

最近,电动垂直起落(eVTOL)飞机因其克服城市地面交通拥堵的能力而成为城市航空运输的重中之重。本研究设计了一种新型的按比例升力巡航 "蜻蜓"。蜻蜓 "结合了八旋翼飞行器和固定翼飞行器的特点。与同类型的 eVTOL 飞机相比,它具有更长的翼展和更稳定的飞机结构,不仅可以在不需要跑道的情况下垂直起降,还能在半空中快速直线飞行和悬停。为了确保飞行试验的成功,本文还对其进行了模拟。在Gazebo仿真平台上设计了与eVTOL飞行试验环境高度契合的仿真场景,再结合PX4飞控平台,在Gazebo平台上对构建的飞行器仿真模型进行了系统SITL,最终获得了用于精确分析的仿真飞行试验数据,反馈了控制算法的准确性和稳定性,为后续'蜻蜓'飞行器硬件在环仿真和物理飞行试验提供了科学支撑。
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Design and Flight Simulation Verification of the Dragonfly eVTOL Aircraft
Recently, electric vertical take-off and landing (eVTOL) aircraft have become a top priority for urban air transportation due to their ability to overcome urban ground traffic congestion. In this research, a new type of scaled lift–cruise ‘Dragonfly’ has been designed. The ‘Dragonfly’ combines the characteristics of an octocopter and a fixed-wing aircraft. Compared with the same type of eVTOL aircraft, it has a longer wingspan and a more stable aircraft structure, it can not only take off and land vertically without the need for a runway, but also fly quickly in a straight line and hover in mid-air. In order to ensure the success of the flight test, it was also simulated in this paper. A simulation scenario highly fitting with the flight test environment of eVTOL is designed in the Gazebo simulation platform, and then combined with the PX4 flight control platform, the system SITL of the constructed aircraft simulation model is carried out on the Gazebo platform, Finally, simulation flight test data for accurate analysis are obtained, the accuracy and stability of the control algorithm are fed back, and scientific support for the follow-up ‘Dragonfly’ aircraft hardware-in-the-loop simulation and physical flight test is provided.
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